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Article Dans Une Revue Proceedings of SPIE, the International Society for Optical Engineering Année : 2012

Investigation on 2D disks and stadiums micro-resonators structures based on UV210 polymer

David Pluchon
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Nolwenn Huby
Bruno Bêche

Résumé

We report on the design and the overall realization of micro-resonators based on the development of adequate processes on UV210 polymer. These micro-optical structures are developed by deep ultraviolet lithography allowing fabrication of nano-structured devices by mean of low cost and reproducible processes. Two families of resonant micro-structures shaped on disk and stadium with various sizes are investigated. Structural and optical imaging characterizations have been carried out to ensure their ability as resonant integrated micro-structures. At first, scanning electron microscopy (SEM) and Nomarsky microscopy studies confirm the UV-light process resolution down to 450 nm developed on UV210 polymer. Then, optical characterizations have been performed as regards intensity and spectral properties of such micro-resonators. Field intensity measurements in visible and infrared range have been realized and validate the aptitude of the micro-structures to propagate and to allow an evanescent photonic coupling between waveguides and micro-resonators. Finally, spectral analyses demonstrate the presence of optical resonances with 1.45 nm and 2.19 nm free spectral range values for respectively disk and stadium micro-structures. The UV210 polymer appears appropriate for the realization of micro-structures requiring a few hundred nanometers gap-scale while maintaining adequate spectral properties for versatile applications in telecommunication, metrology and sensors.
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Dates et versions

hal-00680496 , version 1 (19-03-2012)

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David Pluchon, Nolwenn Huby, Hervé Lhermite, Daphné Duval, Bruno Bêche. Investigation on 2D disks and stadiums micro-resonators structures based on UV210 polymer. Proceedings of SPIE, the International Society for Optical Engineering, 2012, 8428, pp.8428-71. ⟨10.1117/12.922232⟩. ⟨hal-00680496⟩
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